We report an approach for high-resolution spectroscopy using a widely tunable laser emitting in the molecular fingerprint region. The laser is based on difference-frequency generation (DFG) in a nonlinear orientation-patterned GaAs crystal. The signal laser, a CO2 gas laser, is operated in a kHz-pulsed mode while the pump laser, an external-cavity quantum cascade laser, is finely mode-hop-free tuned. The idler radiation covers a spectral range of ∼11.6-15 μm with a laser linewidth of ∼ 2.3 MHz. We showcase the versatility and the potential for molecular fingerprinting of the developed DFG laser source by resolving the absorption features of a mixture of several species in the long-wavelength mid-infrared. Furthermore, exploiting the wide tunability and resolution of the spectrometer, we resolve the broadband absorption spectrum of ethylene (C2H4) over ∼13-14.2 μm and quantify the self-broadening coefficients of some selected spectral lines. © 2023 Optica Publishing Group.

High-resolution molecular fingerprinting in the 11.6-15 μm range by a quasi-CW difference-frequency-generation laser source

Gotti Riccardo;
2023-01-01

Abstract

We report an approach for high-resolution spectroscopy using a widely tunable laser emitting in the molecular fingerprint region. The laser is based on difference-frequency generation (DFG) in a nonlinear orientation-patterned GaAs crystal. The signal laser, a CO2 gas laser, is operated in a kHz-pulsed mode while the pump laser, an external-cavity quantum cascade laser, is finely mode-hop-free tuned. The idler radiation covers a spectral range of ∼11.6-15 μm with a laser linewidth of ∼ 2.3 MHz. We showcase the versatility and the potential for molecular fingerprinting of the developed DFG laser source by resolving the absorption features of a mixture of several species in the long-wavelength mid-infrared. Furthermore, exploiting the wide tunability and resolution of the spectrometer, we resolve the broadband absorption spectrum of ethylene (C2H4) over ∼13-14.2 μm and quantify the self-broadening coefficients of some selected spectral lines. © 2023 Optica Publishing Group.
2023
Inglese
31
3
Crystal orientation; Ethylene; Gas lasers; III-V semiconductors; Pulsed lasers; Pumping (laser); Quantum cascade lasers; Spectrometers; Spectroscopic analysis; CO2 gas; Difference-frequency generation; GaAS crystals; High resolution; High-resolution spectroscopy; Laser emitting; Laser sources; Molecular fingerprint; Molecular fingerprinting; Widely tunable lasers; Absorption spectroscopy
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85147011638&doi=10.1364/OE.480107&partnerID=40&md5=deace898671758a34bffb47a8dcfa86a
9
info:eu-repo/semantics/article
262
Elkhazraji, Ali; Shakfa Mohammad, Khaled; Lamperti, Marco; Hakimov, Khaiyom; Djebbi, Khalil; Gotti, Riccardo; Gatti, Davide; Marangoni, Marco; Farooq,...espandi
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/1497540
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